β-Sitosterol-D-Glucopyranoside Mimics Estrogenic Properties and Stimulates Glucose Utilization in Skeletal Muscle Cells.
Jyotsana PandeyKapil DevSourav ChattopadhyaySleman KadanTanuj SharmaRakesh MauryaSabyasachi SanyalMohammad Imran SiddiqiHilal ZaidAkhilesh Kumar TamrakarPublished in: Molecules (Basel, Switzerland) (2021)
Estrogenic molecules have been reported to regulate glucose homeostasis and may be beneficial for diabetes management. Here, we investigated the estrogenic effect of β-sitosterol-3-O-D-glucopyranoside (BSD), isolated from the fruits of Cupressus sempervirens and monitored its ability to regulate glucose utilization in skeletal muscle cells. BSD stimulated ERE-mediated luciferase activity in both ERα and ERβ-ERE luc expression system with greater response through ERβ in HEK-293T cells, and induced the expression of estrogen-regulated genes in estrogen responsive MCF-7 cells. In silico docking and molecular interaction studies revealed the affinity and interaction of BSD with ERβ through hydrophobic interaction and hydrogen bond pairing. Furthermore, prolonged exposure of L6-GLUT4myc myotubes to BSD raised the glucose uptake under basal conditions without affecting the insulin-stimulated glucose uptake, the effect associated with enhanced translocation of GLUT4 to the cell periphery. The BSD-mediated biological response to increase GLUT4 translocation was obliterated by PI-3-K inhibitor wortmannin, and BSD significantly increased the phosphorylation of AKT (Ser-473). Moreover, BSD-induced GLUT4 translocation was prevented in the presence of fulvestrant. Our findings reveal the estrogenic activity of BSD to stimulate glucose utilization in skeletal muscle cells via PI-3K/AKT-dependent mechanism.
Keyphrases
- cell cycle arrest
- skeletal muscle
- induced apoptosis
- estrogen receptor
- pi k akt
- signaling pathway
- blood glucose
- breast cancer cells
- single cell
- cell death
- type diabetes
- poor prognosis
- cell proliferation
- insulin resistance
- cardiovascular disease
- oxidative stress
- genome wide
- transcription factor
- stem cells
- metabolic syndrome
- gene expression
- molecular docking
- blood pressure
- adipose tissue
- molecular dynamics simulations
- cell therapy
- drug delivery
- endothelial cells
- weight loss
- capillary electrophoresis